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天然自噬激活剂:对抗光老化的有前途策略。

Natural autophagy activators: A promising strategy for combating photoaging.

机构信息

Photobiology Laboratory, Systems Toxicology and Health Risk Assessment Group, CSIR- Indian Institute of Toxicology Research (CSIR-IITR), Vishvigyan Bhawan 31, Mahatma Gandhi Marg, Lucknow-226001 Uttar Pradesh, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad-201002 Uttar Pradesh, India.

Department of Biotechnology, Thapar Institute of Engineering & Technology, Patiala-147004 Punjab, India.

出版信息

Phytomedicine. 2024 Sep;132:155508. doi: 10.1016/j.phymed.2024.155508. Epub 2024 Mar 4.

Abstract

BACKGROUND

Photodamage to the skin stands out as one of the most widespread epidermal challenges globally. Prolonged exposure to sunlight containing ultraviolet radiation (UVR) instigates stress, thereby compromising the skin's functionality and culminating in photoaging. Recent investigations have shed light on the importance of autophagy in shielding the skin from photodamage. Despite the acknowledgment of numerous phytochemicals possessing photoprotective attributes, their potential to induce autophagy remains relatively unexplored.

PURPOSE

Diminished autophagy activity in photoaged skin underscores the potential benefits of restoring autophagy through natural compounds to enhance photoprotection. Consequently, this study aims to highlight the role of natural compounds in safeguarding against photodamage and to assess their potential to induce autophagy via an in-silico approach.

METHODS

A thorough search of the literature was done using several databases, including PUBMED, Science Direct, and Google Scholar, to gather relevant studies. Several keywords such as Phytochemical, Photoprotection, mTOR, Ultraviolet Radiation, Reactive oxygen species, Photoaging, and Autophagy were utilized to ensure thorough exploration. To assess the autophagy potential of phytochemicals through virtual screening, computational methodologies such as molecular docking were employed, utilizing tools like AutoDock Vina. Receptor preparation for docking was facilitated using MGLTools.

RESULTS

The initiation of structural and functional deterioration in the skin due to ultraviolet radiation (UVR) or sunlight-induced reactive oxygen species/reactive nitrogen species (ROS/RNS) involves the modulation of various pathways. Natural compounds like phenolics, flavonoids, flavones, and anthocyanins, among others, possess chromophores capable of absorbing light, thereby offering photoprotection by modulating these pathways. In our molecular docking study, these phytochemicals have shown binding affinity with mTOR, a negative regulator of autophagy, indicating their potential as autophagy modulators.

CONCLUSION

This integrated review underscores the photoprotective characteristics of natural compounds, while the in-silico analysis reveals their potential to modulate autophagy, which could significantly contribute to their anti-photoaging properties. The findings of this study hold promise for the advancement of cosmeceuticals and therapeutics containing natural compounds aimed at addressing photoaging and various skin-related diseases. By leveraging their dual benefits of photoprotection and autophagy modulation, these natural compounds offer a multifaceted approach to combatting skin aging and related conditions.

摘要

背景

皮肤光损伤是全球范围内最普遍的表皮挑战之一。长时间暴露在含有紫外线辐射(UVR)的阳光下会引发皮肤应激,从而损害皮肤功能,导致光老化。最近的研究揭示了自噬在保护皮肤免受光损伤方面的重要性。尽管许多植物化学物质具有光保护特性已得到认可,但它们诱导自噬的潜力仍相对未知。

目的

光老化皮肤中自噬活性的降低强调了通过天然化合物恢复自噬以增强光保护的潜在益处。因此,本研究旨在强调天然化合物在防止光损伤中的作用,并通过计算方法评估它们通过诱导自噬来增强光保护的潜力。

方法

使用 PUBMED、Science Direct 和 Google Scholar 等多个数据库对文献进行了全面搜索,以收集相关研究。使用了一些关键词,如植物化学物质、光保护、mTOR、紫外线辐射、活性氧、光老化和自噬,以确保全面探索。为了通过虚拟筛选评估植物化学物质的自噬潜力,使用了分子对接等计算方法,利用 AutoDock Vina 等工具。使用 MGLTools 为对接准备受体。

结果

由于紫外线辐射(UVR)或阳光诱导的活性氧/活性氮(ROS/RNS),皮肤的结构和功能开始恶化,涉及到各种途径的调节。天然化合物,如酚类、类黄酮、黄酮和花青素等,具有能够吸收光的发色团,从而通过调节这些途径提供光保护。在我们的分子对接研究中,这些植物化学物质显示出与 mTOR(自噬的负调节剂)的结合亲和力,表明它们作为自噬调节剂的潜力。

结论

本综述强调了天然化合物的光保护特性,而计算分析揭示了它们调节自噬的潜力,这可能对其抗光老化特性有重要贡献。这项研究的结果为含有天然化合物的化妆品和治疗剂的发展提供了希望,这些制剂旨在解决光老化和各种皮肤相关疾病。通过利用其光保护和自噬调节的双重益处,这些天然化合物提供了一种多方面的方法来对抗皮肤衰老和相关疾病。

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